The ability to predict thermal-induced stresses in granular materials is of practical importance across a range of disciplines ranging from process engineering to geotechnical engineering. This study presents an analytical formula to predict thermal-induced stress increments in mono-disperse granular materials subject to an initial isotropic stress state. A complementary series of DEM simulations were carried out to explore the applicability of the proposed analytical formula. The comparative analysis showed that the proposed expression can accurately predict stress changes in packings where there are negligible particle displacements as a consequence of the thermal loading (e.g. regular packings and medium/dense random packings); however l...
An extended numerical model of pendular bridge for spherical grains is introduced, enabling the dete...
An extended numerical model of pendular bridge for spherical grains is introduced, enabling the dete...
Abstract. Jammed granular matter transmits stresses non-uniformly like no conventional solid, especi...
The ability to predict thermal-induced stresses in granular materials is of practical importance acr...
Thermal conduction in granular materials is mainly dominated by volumetric fraction of constituents,...
We investigate the Green function of two-dimensional dense random packings of grains in order to dis...
Various factors, such as the volumetric fraction of constituents, mineralogy, and pore fluids, affec...
This study systematically explores the effect of the shape of the particle size distribution on stre...
AbstractExpressions for bulk stress within a granular material in a dynamic setting are reviewed and...
From the experimental point of view, it is very difficult to obtain accurate stress measurements wit...
Estimating the effective thermal conductivity (ETC) of granular materials is important in various en...
AbstractIt has been well recognized that, due to anisotropic packing structure of granular material,...
International audienceWriting the stress as a sum over contact forces allows one to partition stress...
International audienceThe behavior of a model granular material, made of slightly polydisperse beads...
The behaviour of a model granular material (an assembly of slightly polydisperse spherical beads, wi...
An extended numerical model of pendular bridge for spherical grains is introduced, enabling the dete...
An extended numerical model of pendular bridge for spherical grains is introduced, enabling the dete...
Abstract. Jammed granular matter transmits stresses non-uniformly like no conventional solid, especi...
The ability to predict thermal-induced stresses in granular materials is of practical importance acr...
Thermal conduction in granular materials is mainly dominated by volumetric fraction of constituents,...
We investigate the Green function of two-dimensional dense random packings of grains in order to dis...
Various factors, such as the volumetric fraction of constituents, mineralogy, and pore fluids, affec...
This study systematically explores the effect of the shape of the particle size distribution on stre...
AbstractExpressions for bulk stress within a granular material in a dynamic setting are reviewed and...
From the experimental point of view, it is very difficult to obtain accurate stress measurements wit...
Estimating the effective thermal conductivity (ETC) of granular materials is important in various en...
AbstractIt has been well recognized that, due to anisotropic packing structure of granular material,...
International audienceWriting the stress as a sum over contact forces allows one to partition stress...
International audienceThe behavior of a model granular material, made of slightly polydisperse beads...
The behaviour of a model granular material (an assembly of slightly polydisperse spherical beads, wi...
An extended numerical model of pendular bridge for spherical grains is introduced, enabling the dete...
An extended numerical model of pendular bridge for spherical grains is introduced, enabling the dete...
Abstract. Jammed granular matter transmits stresses non-uniformly like no conventional solid, especi...